 |
اخبار و تازه ها
اخبار و تازه ها [Volume 9, Number 3] |
 |
اس
[Volume 2, Number 1] |
 |
بشتکسیکش
[Volume 9, Number 4] |
 |
بشی
[Volume 9, Number 1] |
 |
تعیین نیمه عمر تخریب پایدار کننده پیشرانه دوپایه تفنگی (علمی-ترویجی)
[Volume 9, Number 1] |
 |
سوخت جامد
[Volume 9, Number 3] |
 |
شسبمنکتیسشمنت
[Volume 8, Number 4] |
 |
مواد پرانرژی, ایمنی حرارتی, گرماسنجی روبشی دیفرانسیلی ) DSC (, انرژی فعال سازی, دمای بحرانی انفجار حرارتی.
[Volume 9, Number 1] |
 |
1-(4-sulfobutyl) -3-methylimidazolium hydrogensulfate
[Volume 10, Number 1] |
 |
4-Diol.
[Volume 16, Number 4] |
 |
4-Hydroxybutyl ferrocene
[Volume 12, Number 1] |
 |
4]oxazepine (CR)
[Volume 11, Number 1] |
 |
6-Trinitrotoluene (TNT).
[Volume 10, Number 4] |
 |
ABAQUS.
[Volume 14, Number 2] |
 |
AN/HTPB propellant.
[Volume 12, Number 2] |
 |
AUTODYN
[Volume 12, Number 4] |
 |
AUTODYN software.
[Volume 18, Number 2] |
 |
Accelerated ageing tests
[Volume 15, Number 3] |
 |
Accelerated ageing tests
[Volume 14, Number 2] |
 |
Accelerated ageing tests
[Volume 15, Number 2] |
 |
Acetic anhydride
[Volume 12, Number 3] |
 |
Acfol explosive
[Volume 11, Number 1] |
 |
Adhesion
[Volume 9, Number 4] |
 |
Al-B4C Powder.
Numerical and Experimental Investigation of Explosive Powder Compaction Process [Volume 10, Number 3] |
 |
Alkaline Extraction
[Volume 18, Number 4] |
 |
Aluminium nanoparticles, Arc discharge, X-ray diffraction (XRD), Scanning electron microscopy (SEM)
Synthesis and in Situ Coating of Aluminium Nano Particles by Arc Method [Volume 8, Number 3] |
 |
Aluminum
[Volume 15, Number 1] |
 |
Aluminum
[Volume 13, Number 2] |
 |
Ammonium Nitrate
[Volume 16, Number 2] |
 |
Ammonium Nitrate
[Volume 16, Number 1] |
 |
Ammonium perchlorate.
[Volume 14, Number 1] |
 |
Analytical model.
[Volume 17, Number 3] |
 |
Anti-solvent Crystallization.
[Volume 13, Number 2] |
 |
Antioxidants are used in propellant formulation to prevent oxidation and increase their lifespan. Oxidation Induction Time (OIT) test is one of the best methods to analysis the performance of antioxidants. This test determined the resistance of the polyme
[Volume 18, Number 4] |
 |
Arifitial Nural Networks, Thrust, flight Simulation, Solid Propllant Rocket
[Volume 8, Number 3] |
 |
Autodyn
[Volume 15, Number 1] |
 |
Azidation
[Volume 19, Number 1] |
 |
Azido oxidizer
[Volume 13, Number 1] |
 |
Badr Software
[Volume 16, Number 1] |
 |
Ballistic Testing
[Volume 17, Number 1] |
 |
Ballistic properties
[Volume 10, Number 2] |
 |
Bending moment
[Volume 15, Number 2] |
 |
Berthelot Equation
[Volume 16, Number 4] |
 |
Binder Curing
[Volume 17, Number 3] |
 |
Binder.
Synthesis and Characterization of Poly(2,2-Bis(Azidomethyl)-1,3-Propylene Adipateas as Energetic Binder [Volume 11, Number 3] |
 |
Bisphenolic compounds
[Volume 18, Number 1] |
 |
Blocking Agents
The Effects of the Viscosity Reducing Additives on the Processability
of Polymer-Bonded Explosive and Composite Solid Propellants
[Volume 12, Number 1] |
 |
Borate ester
[Volume 13, Number 1] |
 |
Breakup time
[Volume 11, Number 1] |
 |
Bridge wire
[Volume 15, Number 2] |
 |
Burning Rate
[Volume 17, Number 2] |
 |
Burning Rate
[Volume 19, Number 3] |
 |
Burning Rate
[Volume 9, Number 4] |
 |
Burning rate
[Volume 16, Number 4] |
 |
Burning rate.
[Volume 11, Number 1] |
 |
CCE.
[Volume 19, Number 1] |
 |
CFD (Computational Fluid Dynamics) Technique
[Volume 18, Number 3] |
 |
CONWEP Model
[Volume 17, Number 2] |
 |
Calibration
[Volume 16, Number 1] |
 |
Calibration
[Volume 16, Number 3] |
 |
Carreau-Yasuda
[Volume 16, Number 4] |
 |
Casting Process
[Volume 12, Number 2] |
 |
Catalyst
[Volume 16, Number 1] |
 |
Cavity Expansion Theory
[Volume 12, Number 3] |
 |
Characterize
[Volume 15, Number 2] |
 |
Chromotropic acid
[Volume 16, Number 1] |
 |
Clamped Rectangular Plate
Experimental Investigation and Numerical Simulation of Rectangular Steel Plates Free [Volume 10, Number 3] |
 |
Co-flow, Flame Structure, Organic Particle Cloud
Study the Effect of Particle Radius on the Co-Flow Premixed Flame of Organic Particle Cloud [Volume 8, Number 2] |
 |
Cobalt oxide
[Volume 11, Number 1] |
 |
Cocrystallization
[Volume 16, Number 1] |
 |
Comp-B
[Volume 14, Number 4] |
 |
Compatibility
[Volume 18, Number 2] |
 |
Composite Structure.
[Volume 17, Number 3] |
 |
Composite propellants, Initial temperature, Aluminum, Temperature sensitivity, Additives, Size distribution
[Volume 9, Number 1] |
 |
Compression Modulus
[Volume 14, Number 2] |
 |
Compressive strength
[Volume 16, Number 3] |
 |
Computational methods
[Volume 12, Number 2] |
 |
Concentration.
Determination of diffusion coefficient and concentration change of hydrocarbon fuel in amine fuel [Volume 9, Number 3] |
 |
Concrete and Concrete/Steel Targets, Projectile, analytical model of Tate, Penetration depth, LS-DYNA software
Analytical and Numerical Analysis of Long Rod Projectile Penetrating into Concrete and Concrete/Steel Targets [Volume 8, Number 1] |
 |
Concrete, High Strain Rate, Damage, Viscoplastic Model, Split Hopkinson Pressure Bar (Shpb)
Numerical Analysis and Presentation of a Combined Structural Model for the Concrete Affected by a Relatively High Strain Rate Loading [Volume 5, Number 2] |
 |
Coolant
[Volume 12, Number 2] |
 |
Copolyurethane
[Volume 10, Number 1] |
 |
Critical temperature for the thermal explosion
[Volume 15, Number 4] |
 |
Crystal Growth
[Volume 14, Number 4] |
 |
Crystal Size Distribution
[Volume 17, Number 3] |
 |
Crystal stacking
[Volume 14, Number 2] |
 |
Curing
Investigation of the Properties of Polyurethane Elastomer Based on Synthesis and Characterization of PTHF-GAP-PTHF Triblock Copolymer [Volume 13, Number 4] |
 |
Curtius Rearrangement
[Volume 17, Number 3] |
 |
Curtius Rearrangement.
[Volume 18, Number 2] |
 |
DMAZ, Zeolite membrane, Dehydration, Zeolite nano crystal, Pervaporation
Study on Zeolite Membranes for Dehydration of Liquid Fuel DMAZ [Volume 8, Number 3] |
 |
DMAZ.
[Volume 9, Number 1] |
 |
DPM
[Volume 16, Number 3] |
 |
Damage
[Volume 13, Number 2] |
 |
Decomposition
[Volume 10, Number 1] |
 |
Decoy Flares
[Volume 11, Number 2] |
 |
Defensive Retrofitting Methods, AHP Method, TOPSIS Method
Optimum Defensive Retrofitting Methods of Critical Buildings Against Explosion Loads [Volume 6, Number 3] |
 |
Density Functional Theory
[Volume 18, Number 3] |
 |
Density.
[Volume 19, Number 1] |
 |
Dent test.
Experimental Study on the Effect of Nano-Structured Aluminum Powder on the Properties [Volume 10, Number 3] |
 |
Design of experiment
[Volume 10, Number 1] |
 |
Design of experiment.
[Volume 16, Number 3] |
 |
Detonation Pressure
[Volume 14, Number 1] |
 |
Diels-Alder reaction
[Volume 11, Number 1] |
 |
Differential Scanning Calorimetery.
[Volume 14, Number 1] |
 |
Differential Scanning Calorimetry
[Volume 15, Number 2] |
 |
Differential scanning calorimetry
[Volume 10, Number 2] |
 |
Dimethyl amino ethyl azid.
[Volume 12, Number 3] |
 |
Dispersion.
[Volume 13, Number 2] |
 |
Double Base Propellant
[Volume 10, Number 2] |
 |
Double Base Propellants
[Volume 13, Number 3] |
 |
Double Base Solid Propellants.
[Volume 17, Number 1] |
 |
Double-Based Propellant, Stabilizer, Heat of Explosion, AkarditeII, 2-NDPA, CentraliteI
Effects of the Quality and Quantity of Chemical Stabilizers on the Combustion Properties and Stability of Double Based Propellants [Volume 5, Number 2] |
 |
Dynamic Analysis
[Volume 14, Number 4] |
 |
Dynamic Load
[Volume 18, Number 1] |
 |
Dynamic Mechanical Analysis
[Volume 13, Number 1] |
 |
EFP.
Experimental and Numerical Analysis of the Follow Warhead Penetration of Tandem Projectiles in to the Finite Concrete Targets [Volume 11, Number 3] |
 |
Eductor.
[Volume 13, Number 2] |
 |
Electrical Conductivity
[Volume 14, Number 2] |
 |
Electrochemical Impedance Test.
[Volume 12, Number 4] |
 |
Energetic materials
[Volume 10, Number 3] |
 |
Energetic salts
[Volume 12, Number 2] |
 |
Energy-Absorbing Layers.
[Volume 11, Number 4] |
 |
Environmental factors
[Volume 13, Number 1] |
 |
Experiment Design
[Volume 17, Number 4] |
 |
Experimental Study
[Volume 19, Number 3] |
 |
Explosion
[Volume 15, Number 4] |
 |
Explosion Performance
[Volume 14, Number 3] |
 |
Explosive Loading
The Analysis of Strain Rate Sensitive Behavior of Aluminum Made Cylindrical Shells under Internal Pressure Loading [Volume 9, Number 1] |
 |
Explosive Train
[Volume 13, Number 1] |
 |
Explosive Welding, Welding Window, Ms90 Brass, St 14 Steel, Simulation
A Comparison of the Explosive Welding Interface of Steel St14/Brass Ms90 with the One Predicted the Explosive Welding Window [Volume 5, Number 2] |
 |
Explosive ratio
[Volume 14, Number 3] |
 |
Explosives.
[Volume 17, Number 4] |
 |
Extruded Composite propellants.
[Volume 11, Number 1] |
 |
FRP coating.
[Volume 15, Number 2] |
 |
Factorial experiment
[Volume 8, Number 4] |
 |
Fe2O3
[Volume 10, Number 1] |
 |
Finite element analysis
[Volume 15, Number 1] |
 |
Fixed-bed reactor
[Volume 15, Number 3] |
 |
Flame
[Volume 13, Number 1] |
 |
Flame Retardant
[Volume 10, Number 3] |
 |
Flexural Strength
[Volume 10, Number 4] |
 |
Fluorescence quenching
[Volume 13, Number 1] |
 |
Fluorescence, Quenching, Stern–Volmer constant, Nitroaromatic explosives.
[Volume 8, Number 2] |
 |
Fluorosence quenching and FIDO.
[Volume 11, Number 2] |
 |
Flynn-Wall-Ozawa.
[Volume 10, Number 2] |
 |
Fracture energy.
[Volume 16, Number 1] |
 |
Fractures.
[Volume 16, Number 2] |
 |
Friction, 15N Chemical Shift, Impact, Nitramines, Friction Sensitivity, Impact Sensitivity
New Aspects of Friction Sensitivity of Nitramines [Volume 7, Number 1] |
 |
Friedman Icoconversional
Shelf Life Predication of a Single -Base Propellant by Differential Scanning Calorimetry and Combined Kinetic Analysis [Volume 11, Number 3] |
 |
Fully Clamped Circular Plate
[Volume 10, Number 1] |
 |
Gel Fuel, Un Symetrial dimethyl hydrazine, UDMH, Methyl Cellulos, Rheological Properties
Preparation of UDMH Gel Fuel Containing Aluminum Nano Particles and Study of its Rheological Properties [Volume 6, Number 3] |
 |
Genetic Algorithm
[Volume 16, Number 1] |
 |
Grading
[Volume 9, Number 2] |
 |
Grain Analysis, Solid Motor Ballistic, Multilateral Grain, Star Grain, Cylindrical Grain
General Grain Analysis and Rapid Internal Ballistic Simulation for Solid Motor [Volume 5, Number 2] |
 |
Greatrix Model
[Volume 13, Number 2] |
 |
Green binders
[Volume 12, Number 1] |
 |
Green explosives.
[Volume 9, Number 3] |
 |
HBIW, 2, 4, 6, 8, 10, 12-hexabenzyl-2, 4, 6, 8, 10, 12-hexaazatetracyclo [5, 5, 0, 03,11, 05,9] dodecane, CL-20, HNIW, BF3, Catalyst, Crystallization
Synthesis of 2,4,6,8,10,12-Hexabenzyl-2,4,6,8,10,12-Hexaazatetracyclo[5,5,0,03,11,05,9]Dodecane via New Catalysts [Volume 6, Number 3] |
 |
HMX.
[Volume 17, Number 1] |
 |
HTPB
[Volume 13, Number 2] |
 |
HTPB
[Volume 16, Number 2] |
 |
HTPB
[Volume 13, Number 2] |
 |
HTPB reactivity
[Volume 14, Number 2] |
 |
Heat of reaction
[Volume 12, Number 1] |
 |
High Performance Liquid Chromatography (HPLC-UV)
[Volume 15, Number 4] |
 |
High energetic materials.
[Volume 10, Number 2] |
 |
Hopkinson test.
[Volume 18, Number 3] |
 |
Hydrogen Peroxide, Separation, Cationic Resin, Amberlite IR-120, Frendlich, Langmuir
Separation of Cations from Hydrogen Peroxide and Study of Adsorption Models Using Chromium Cation (Cr3+) [Volume 6, Number 3] |
 |
Hydroxyl-terminated polybutadiene
[Volume 16, Number 1] |
 |
Ignition delay time
[Volume 10, Number 2] |
 |
Ignition.
[Volume 14, Number 1] |
 |
Impact and Friction Sensitivity
[Volume 13, Number 3] |
 |
Impulsive load, Circular plate, Plastic hinge, Local shear failure, Residual kinetic energy
[Volume 8, Number 1] |
 |
Increase the chain length
[Volume 10, Number 4] |
 |
Injection Belt.
[Volume 14, Number 4] |
 |
Inorganic filler
[Volume 12, Number 3] |
 |
Inplane biaxial presress.
[Volume 10, Number 3] |
 |
Insensitive Munitions
[Volume 16, Number 4] |
 |
Insensitive Munitions
[Volume 12, Number 2] |
 |
Instantaneous performance
[Volume 8, Number 4] |
 |
Interactions.
[Volume 19, Number 1] |
 |
Internal Ballistics, Solid Propellant Motor, Quasi One Dimensional Simulation, Jameson Method, Erosive Burning, Two Phase Flow
One-dimensional Simulation of Two-Phase SRM Internal Ballistics [Volume 5, Number 2] |
 |
Isocyanate/ Hydroxyl ratio
[Volume 10, Number 2] |
 |
JPX rocket fuel, Dissolution, Oxidation, Unsymmetrical dimethyl hydrazine
An experimental investigationof vapor neutralization and dissolution and of JPX fuel [Volume 8, Number 1] |
 |
JWL
[Volume 16, Number 2] |
 |
Jet propellant 10
[Volume 12, Number 1] |
 |
Kamlet Method
Estimation of Velocity and Detonation Pressure of some High Energy Compounds using Kamlet Method based on Kistiakowski-Wilson Rules [Volume 13, Number 4] |
 |
Kapila two-phase model
[Volume 18, Number 4] |
 |
Keywords Composite Propellants, Burning Rate, DTA, Temperature Sensitivity, Ammonium Oxalate, Strontium Carbonate.
[Volume 8, Number 1] |
 |
Keywords Double Based Propellant, Embedded Metal Wire, Burning Rate, Grain.
[Volume 8, Number 1] |
 |
Keywords Gaseous Detonation, Transverse Wave, Hydrodynamic Instability, Unburnt Gas Pocket.
[Volume 8, Number 1] |
 |
Keywords afterburning, solid propellants, IR radiation
[Volume 9, Number 2] |
 |
Kinetics.
[Volume 12, Number 1] |
 |
Kintic parameters
[Volume 14, Number 2] |
 |
Kissinger
[Volume 18, Number 1] |
 |
LS-DYNA
[Volume 17, Number 1] |
 |
LS-DYNA.
RC Slabs Retrofitting Against Blast Loading by GFRP-PU and CFRP-PU [Volume 13, Number 4] |
 |
LS_DYNA
[Volume 15, Number 1] |
 |
Laser
[Volume 12, Number 2] |
 |
Lauryl amine
[Volume 15, Number 2] |
 |
Level set
[Volume 14, Number 3] |
 |
Life time
Prediction of Chemical Life Time for a Propellant by Differents Kinetic Models [Volume 10, Number 3] |
 |
Lifetime Prediction
[Volume 9, Number 4] |
 |
Lock force
[Volume 15, Number 3] |
 |
MAPO
[Volume 12, Number 1] |
 |
Maleic Anhydride
[Volume 16, Number 2] |
 |
Mass Loss
[Volume 12, Number 4] |
 |
Mass loss.
[Volume 12, Number 4] |
 |
Maximum Diameter of Destruction.
[Volume 17, Number 3] |
 |
Mechanical Properties
[Volume 15, Number 3] |
 |
Mechanical Properties
[Volume 18, Number 3] |
 |
Mechanical Properties.
[Volume 15, Number 3] |
 |
Mechanical properties
[Volume 19, Number 2] |
 |
Mechanical properties
[Volume 11, Number 1] |
 |
Mechanical properties.
[Volume 10, Number 2] |
 |
Mechanical properties.
[Volume 12, Number 3] |
 |
Mechanical properties.
[Volume 9, Number 4] |
 |
Melt casting
[Volume 10, Number 1] |
 |
Melt-Pour.
Synthesis and Thermal Analysis Behavior of Aminoguanidinium Energetic Ionic Liquid: Guanidinium Trifluoroacetate [Volume 11, Number 3] |
 |
Mesa
[Volume 10, Number 1] |
 |
Metal Scrap
[Volume 16, Number 1] |
 |
Metal alloys
[Volume 10, Number 1] |
 |
Micro-Organism
[Volume 15, Number 2] |
 |
Microbe Aggregation
[Volume 15, Number 1] |
 |
Migration
[Volume 13, Number 2] |
 |
Migration
[Volume 13, Number 1] |
 |
MnO2
[Volume 9, Number 3] |
 |
Modeling And Simulation
[Volume 14, Number 1] |
 |
Modulation.
Effect of gallant percentage on rheological properties of IRFNA gels [Volume 9, Number 1] |
 |
Molecular dynamics
[Volume 10, Number 3] |
 |
Mouromtseff number
[Volume 16, Number 2] |
 |
Multiple Linear Regression Method
Determination of the Relationship between Impact Sensitivity and Electrostatic Sensitivity of Nitro Energetic Compounds through Multiple Linear Regression Method [Volume 13, Number 4] |
 |
Multiple Linear Regression Method
[Volume 13, Number 2] |
 |
NEPE composite solid propellant,Nitrate ester plasticized polyether,Nitroglycerin, Polyethylene glycol, high energy material
[Volume 9, Number 2] |
 |
Nanocatalyst
[Volume 9, Number 2] |
 |
Nanocatalysts
[Volume 9, Number 3] |
 |
Nanoparticles, Aluminum Powder, Inert Gas Condensation, Oxidation Temperature, Thermal Behavior.
The Thermal Behavior of Aluminum Nanoparticles Synthesized by Inert Gas Condensation [Volume 5, Number 2] |
 |
Nitrocyanamide Anion
[Volume 18, Number 4] |
 |
Non-destructive testing, quality control, solid propellant, ultrasound, X-Ray ,tomography
[Volume 9, Number 2] |
 |
Nonlinear Finite Element Analysis
[Volume 17, Number 2] |
 |
Nonlinear analysis
[Volume 17, Number 1] |
 |
Numerical Simulation
[Volume 19, Number 2] |
 |
Numerical modeling
[Volume 18, Number 1] |
 |
Oxidizer.
A review on NA review on properties and performance of propellant N2O in various propulsion systems [Volume 10, Number 2] |
 |
PBX
[Volume 10, Number 1] |
 |
PBXN-109
[Volume 9, Number 2] |
 |
Phase Stabilized Ammonium Nitrate
[Volume 11, Number 4] |
 |
Phosphorus pentasulfide
[Volume 19, Number 3] |
 |
Plasticizer.
[Volume 17, Number 4] |
 |
Plasticizer.
Effect of Phthalate Plasticizers Existance in Ethyl Cellulose Insulators and Ethyl CelluloseSilica Nanocomposite on the Nitroglycerin Migration from a Double Base Propellant [Volume 11, Number 3] |
 |
Poly (glycidyl nitrate)
[Volume 14, Number 2] |
 |
Poly glycidyl nitrate
[Volume 10, Number 4] |
 |
Polybutadiene acrylonitrile acrylic acid (PBAN) and Curing Kinetics
[Volume 14, Number 1] |
 |
Polyisobutylene, Polymerization, Catalytic System, Army Industries, Energetic Material C4
Production of Military Grade Poly Isobutylene [Volume 6, Number 3] |
 |
Polytetrahydrofuran
[Volume 19, Number 3] |
 |
Porosity
[Volume 11, Number 1] |
 |
Predicting molecular properties
[Volume 11, Number 2] |
 |
Preheating Treament.
[Volume 14, Number 1] |
 |
Pressure Chamber
[Volume 13, Number 3] |
 |
Pressure-Impulse (P-I) Diagram.
[Volume 14, Number 4] |
 |
Primary explosives, lead compounds, lead styphnate, lead azide, green chemistry
A Review of New Group of Green Primary Explosives [Volume 8, Number 1] |
 |
Process ability
[Volume 14, Number 4] |
 |
Processability
[Volume 15, Number 4] |
 |
Projectile penetration, Composite, Fiber stacking sequence, Numerical model, Experiment
[Volume 8, Number 3] |
 |
Projectile, Oblique Impact, Critical Penetration Angle, Ballistic Limit, Aspect Ratio
Experimental Determination of Penetration Critical Angle in Oblique Impact of Projectiles on Metallic Targets [Volume 6, Number 3] |
 |
Protecting group
[Volume 12, Number 3] |
 |
QSPR
[Volume 16, Number 3] |
 |
Quantum computation.
[Volume 13, Number 2] |
 |
RDX
[Volume 9, Number 3] |
 |
Radiometric Rules
[Volume 15, Number 1] |
 |
Reinforced Concrete Beam, Damage Pattern, blast load, residual strength.
[Volume 8, Number 3] |
 |
Residual Velocity
[Volume 17, Number 2] |
 |
Response surface method
[Volume 12, Number 1] |
 |
Reusability
[Volume 17, Number 4] |
 |
Reusable Catalyst.
Synthesis of Energetic Plasticizer, N-Butyl-N-(2-Nitroxyethyl) Nitramine (BuNENA), in the Presence of Reusable Acidic Ionic Liquids [Volume 11, Number 3] |
 |
Rich nitrogen materials
[Volume 16, Number 2] |
 |
Safety
[Volume 16, Number 1] |
 |
Safety Against Electrostatic Discharge
[Volume 13, Number 1] |
 |
Sensitivity
[Volume 19, Number 1] |
 |
Sensitivity
[Volume 15, Number 1] |
 |
Separation.
[Volume 11, Number 2] |
 |
Sherwood Model.
[Volume 13, Number 4] |
 |
Shock Spectra
[Volume 16, Number 1] |
 |
Simulation
[Volume 13, Number 1] |
 |
Simulation.
[Volume 13, Number 2] |
 |
Simultaneuos analysis
[Volume 13, Number 2] |
 |
Single-base Propellant, N-methyl-4-nitro aniline, Stabilizer, Thermal analysis, Bergmann- Junk test
[Volume 8, Number 2] |
 |
Slivering effect.
[Volume 15, Number 4] |
 |
Sodium borohydride
[Volume 17, Number 4] |
 |
Sol-Gel.
[Volume 15, Number 2] |
 |
Solid Propellant, Metal foil, Burning Rate, Grain.
[Volume 9, Number 2] |
 |
Solid propellant, energetic plasticizer, index of energy, processing, migration
[Volume 9, Number 2] |
 |
Solid rocket motor, grain burn-back, improved level set method
[Volume 8, Number 2] |
 |
Solid rockets, storage, discharge, disposal
Investigation of safe methods in solid rockets discharge, Disposal or recovery of some propellant's components [Volume 9, Number 1] |
 |
Solubility Parameter
[Volume 10, Number 3] |
 |
Solvent/ Non-solvent Method
[Volume 12, Number 2] |
 |
Space Propulsion
[Volume 14, Number 1] |
 |
Specific perforation energy
Experimental Investigation on the Ballistic Impact of 2/1 GLARE Panels [Volume 8, Number 4] |
 |
Spectral Characterization
[Volume 14, Number 1] |
 |
Spinel
[Volume 10, Number 1] |
 |
Stability.
[Volume 19, Number 2] |
 |
Stabilized- Ni/Fe bimetallic nanoparticles
[Volume 11, Number 4] |
 |
Standard Practice for Calculation of Hazard Potential Figures-of-Merit for Thermally Unstable Materials
[Volume 9, Number 3] |
 |
Storage Life
[Volume 19, Number 1] |
 |
Storage shelf life, unsymmetrcal dimethyl hydrazine, oxygen, oxidation reaction.
Investigating the effective agents on shelf life of Unsymmetrical dimethyl hydrazine [Volume 8, Number 1] |
 |
Strain Rate Effects
[Volume 12, Number 4] |
 |
Strain Rate.
[Volume 10, Number 2] |
 |
Structural Descriptors
[Volume 18, Number 2] |
 |
Sulfonate
[Volume 14, Number 3] |
 |
Surface Response Methodology.
[Volume 13, Number 3] |
 |
Surfactant
[Volume 11, Number 1] |
 |
Survival Index
[Volume 12, Number 1] |
 |
Synthesis method
[Volume 13, Number 2] |
 |
Synthesis methods and applications
[Volume 16, Number 2] |
 |
TATB, nitration, solid acid catalysts, heteropolyacid.
Synthesis of 1,3,5-Triamino-2,4,6-trinitrobenzene Catalyzed by heteropoly acids [Volume 8, Number 3] |
 |
THAT
[Volume 19, Number 3] |
 |
TKX-50.
[Volume 14, Number 2] |
 |
TNT
[Volume 18, Number 3] |
 |
Taguchi method
[Volume 9, Number 3] |
 |
Tensile shear strength
[Volume 11, Number 4] |
 |
Tensile strength
[Volume 18, Number 4] |
 |
Tetrazines
[Volume 15, Number 2] |
 |
Thermal Analysis
[Volume 19, Number 3] |
 |
Thermal Battery
[Volume 16, Number 1] |
 |
Thermal Battery
[Volume 18, Number 2] |
 |
Thermal Decomposition.
[Volume 14, Number 1] |
 |
Thermal Stability
[Volume 12, Number 1] |
 |
Thermal Stability.
[Volume 15, Number 3] |
 |
Thermal analysis.
[Volume 14, Number 1] |
 |
Thermal decomposition
[Volume 17, Number 2] |
 |
Thermal decomposition
[Volume 14, Number 2] |
 |
Thermal gravimetric analysis
[Volume 9, Number 1] |
 |
Thermal properties.
[Volume 12, Number 2] |
 |
Thermal sensitivity.
[Volume 10, Number 1] |
 |
Thermally Stable Explosive , Heat-resistant, Insensitive explosives, energetic materials.
[Volume 9, Number 1] |
 |
Thermochemical properties
Synthesis, Characterization and Properties of 1,6-Bis (3-methyl-1-yl) hexane Dicyanamide [Volume 10, Number 3] |
 |
Thermodynamic Properties
Investigation of the Size and Shape of Nano -Structured Aluminume Powder on the Thermal Decomposition of HMX-Based PBX [Volume 11, Number 3] |
 |
Thermodynamic Properties.
[Volume 12, Number 4] |
 |
Thermogravimetric Analysis
[Volume 12, Number 2] |
 |
Three-dimensional Graphene.
[Volume 13, Number 3] |
 |
Thrust
[Volume 10, Number 3] |
 |
Thrust chamber, Liquid propellant, Heat Transfer, Regenerative cooling, Radiation Cooling
[Volume 9, Number 2] |
 |
Thruster
[Volume 14, Number 3] |
 |
Titanium Diboride Powder
[Volume 10, Number 4] |
 |
Triboluminescence
[Volume 16, Number 2] |
 |
Tube core
[Volume 16, Number 3] |
 |
UNIQUAC
[Volume 11, Number 1] |
 |
UV-Vis Spectrophotometry
[Volume 19, Number 2] |
 |
Unreacted materials.
[Volume 13, Number 1] |
 |
Viscosity
[Volume 14, Number 1] |
 |
Viscosity Build up.
[Volume 14, Number 2] |
 |
Viscosity and Heat of combustion
An Improvement to the Properties of GAP Binder with Energetic Ionic Liquids [Volume 13, Number 4] |
 |
Vulnerability
[Volume 16, Number 2] |
 |
Water
[Volume 19, Number 2] |
 |
X-ray Micro-Ct Scan
[Volume 18, Number 1] |
 |
XLDB Propellant, Polycaprolactone, RDX, Pressure Exponent, Ammonium Perchlorate, Specific Impulse
Study of the Effect of Amount & Particle Size of AP and RDX on the Burning Rate & Mechanical Properties of Typical Reduced Smoke XLDB [Volume 6, Number 3] |
 |
XRD and Raman.
[Volume 14, Number 1] |
 |
Zinc () Oxide (ZnO).
[Volume 17, Number 1] |
 |
alane
[Volume 12, Number 2] |
 |
antioxidant.
[Volume 10, Number 2] |
 |
artificial neural network
Introduced Two Simple Approaches for Prediction Heat of Explosion of high energetic materials by using MLR and ANN moels [Volume 9, Number 3] |
 |
barrier effect
[Volume 12, Number 2] |
 |
binder leakage
[Volume 18, Number 2] |
 |
blast loading, explosive, conical-cylindical shells , Zhao damage, semi-experimental model
A semi- experimental model for prediction of deformation of Aluminum cone-cylinder shells under blast loading [Volume 8, Number 2] |
 |
bonding agent
[Volume 9, Number 3] |
 |
boron
[Volume 12, Number 1] |
 |
carboxyl group
[Volume 18, Number 3] |
 |
chains extender
[Volume 14, Number 2] |
 |
click chemistry
[Volume 9, Number 3] |
 |
cold disposal
[Volume 9, Number 4] |
 |
composite solid propellant
[Volume 18, Number 1] |
 |
composite solid propellant, plasticizer, diffusion, fick’s low, migration.
[Volume 8, Number 3] |
 |
copolymer
[Volume 12, Number 2] |
 |
corrosion
[Volume 15, Number 1] |
 |
coupled Euler–Lagrange formulation
[Volume 11, Number 4] |
 |
crack zone
[Volume 19, Number 2] |
 |
curing behavior
[Volume 14, Number 2] |
 |
deep throttling
[Volume 15, Number 1] |
 |
deflection
[Volume 15, Number 4] |
 |
degradation
[Volume 12, Number 2] |
 |
detonation velocity.
[Volume 16, Number 4] |
 |
detonation, detonability limit, critical tube diameter, run up distance, deflagration to detonation transition
An evaluation method for possibility of detonation occurrence in high velocity flows [Volume 8, Number 1] |
 |
diaphragm-cell
[Volume 13, Number 3] |
 |
dilatation
[Volume 13, Number 1] |
 |
diol
[Volume 9, Number 2] |
 |
distribution of injection rate
[Volume 9, Number 1] |
 |
dynamic-mechanical properties
Preparation of HTPB-based polyurethane elastomer using polyfunctional HTPB synthesized by in-situ nitroxide mediated polymerization of 1,3-butadiene: 2) Dynamic- mechanical properties study [Volume 10, Number 1] |
 |
energy content
[Volume 16, Number 2] |
 |
equation of state
[Volume 12, Number 1] |
 |
excess molar Gibbs energy
Eqilibrium data and ecxess molar Gibbs energy for DMAZ and water at 4kPa [Volume 8, Number 4] |
 |
finite element
[Volume 9, Number 2] |
 |
formability limit
[Volume 9, Number 3] |
 |
fragmention and simulation.
[Volume 10, Number 4] |
 |
grain
[Volume 10, Number 3] |
 |
gun propellant, ballistic stability, aging
[Volume 9, Number 2] |
 |
high detonation rate
[Volume 12, Number 1] |
 |
high modulus polypropylene
[Volume 12, Number 4] |
 |
hydrazine
[Volume 8, Number 4] |
 |
igniter.
[Volume 12, Number 1] |
 |
initiation method.
[Volume 11, Number 2] |
 |
insensitive munition, insensitive munition tests
Insensitive Munition (IM) tests [Volume 9, Number 1] |
 |
instantaneous local phase changes.
[Volume 10, Number 2] |
 |
ionic liquids
[Volume 9, Number 3] |
 |
karun IV
Investigation of the Reservoir Effects on the Response of Arch Dam Under Blast Loading [Volume 13, Number 1] |
 |
keywords Aluminum powders, Coating, Viton, Stearic acid.
[Volume 8, Number 2] |
 |
liquid hydrogen and liquid oxygen
[Volume 10, Number 3] |
 |
micro model
[Volume 16, Number 2] |
 |
migration
[Volume 11, Number 2] |
 |
mixed explosive composition.
[Volume 18, Number 4] |
 |
model
[Volume 9, Number 3] |
 |
modeling
[Volume 17, Number 4] |
 |
molecular design
[Volume 15, Number 2] |
 |
money-rivilin equation
[Volume 11, Number 4] |
 |
nitration
[Volume 10, Number 4] |
 |
nitroxide-mediated polymerization, hydroxy terminated polybutadiene, functionality, polyurethane elastomer, thermal stability
Preparation of HTPB-based polyurethane elastomer using polyfunctional HTPB synthesized via in-situ nitroxide mediated polymerization of 1,3-butadiene: 1) Synthesis, characterization and mechanical properties study [Volume 8, Number 2] |
 |
oriented burning
[Volume 8, Number 4] |
 |
penetration, concrete target, shock wave, projectile, cavity expansion theory, AUTODYN
[Volume 9, Number 1] |
 |
poly caprolactone
[Volume 10, Number 2] |
 |
polycaprolactone
[Volume 13, Number 3] |
 |
polymer additives.
[Volume 15, Number 1] |
 |
polymeric stabilizer
[Volume 11, Number 1] |
 |
polymorphism, crystal structure, Cl-20, Raman spectroscopy, FTIR, crystalline forms
Preparation and analysis of CL-20 polymorphs [Volume 8, Number 1] |
 |
propellant
[Volume 10, Number 1] |
 |
pyrotechnic
[Volume 15, Number 1] |
 |
ramjet
[Volume 15, Number 2] |
 |
removal
[Volume 10, Number 2] |
 |
response surface method.
[Volume 9, Number 2] |
 |
rigid projectile.
[Volume 11, Number 4] |
 |
safety specifications
[Volume 15, Number 2] |
 |
selective nitration
[Volume 11, Number 1] |
 |
shock tube
[Volume 15, Number 1] |
 |
specific impulse
[Volume 14, Number 3] |
 |
structural parameters
[Volume 11, Number 2] |
 |
thermal behavior
[Volume 13, Number 1] |
 |
three layers joint.
[Volume 12, Number 3] |
 |
threshold initiation
[Volume 11, Number 1] |
 |
two phase morphology.
[Volume 10, Number 3] |
 |
two- phase mixture
Interior Ballistic Simulation of Grenade Launchers with High/Low Pressure Chambers [Volume 9, Number 1] |
 |
viscosity
Investigating the Effect of Curing Agent and Casting Temperature on Pot Life of Binder System Based on HTPB [Volume 13, Number 4] |
 |
viscosity
[Volume 9, Number 2] |
 |
vortex.
[Volume 17, Number 2] |